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储能系统技术
★ 5.0
考虑热网储热能力的城市综合能源系统站网协同优化规划
Station-Network Cooperative Optimization Planning of Urban Integrated Energy System Considering Heat Storage Capacity of Heat Network
| 作者 | Shunjiang Yu · Changming Chen · Yunchu Wang · Hongfei Yu · Chuanxun Pei · Jiaorong Ren |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年2月 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 城市综合能源系统 站网协同优化规划 蓄热能力 拓扑模型 求解方法 |
语言:
中文摘要
城市综合能源系统的热网具有潜在的储热能力,可显著提升系统运行灵活性。为此,提出一种考虑热网储热能力的站网协同优化规划方法。首先建立恒流量变温度下计及流向描述的热网运行模型,解决管道流向不确定导致现有模型难以直接应用的问题;进而构建面向辐射型结构的供能网络拓扑模型,兼顾网络辐射性与规划经济性;在此基础上,结合信息间隙决策理论与随机优化,构建站网协同优化模型,实现能源站选址定容与电、热网拓扑的联合优化;最后提出基于松弛-收缩耦合McCormick包络的求解方法,提升求解精度。在55节点城市拓扑上的算例验证表明,所提方法在降低规划成本、保障网络辐射结构、利用热网储热能力及提高求解精度方面优于现有方法。
English Abstract
Heat storage capacity of heat network in urban integrated energy system (UIES) has the potential to significantly improve the operational flexibility of the system. To obtain the optimal UIES planning scheme, a UIES station-network cooperative optimization planning (UIES-SNCOP) method considering heat storage capacity is proposed. First, a heat network operation model under constant flow-variable temperature considering flow direction depiction is established for solving the problem that the existing model cannot be directly applied to UIES-SNCOP because the flow direction of pipeline cannot be predetermined. Then, a radial structure-oriented topology model of distribution and heat networks is developed to ensure the radiality of energy supply network while also reducing planning cost. On this basis, a UIES-SNCOP model based on information gap decision theory and stochastic optimization is constructed to realize the co-optimization of the siting and sizing of energy station and topology of distribution and heat networks. Finally, a solution method of UIES-SNCOP model based on relaxation-contraction coupled McCormick envelope is proposed for effectively improving the accuracy of solution result. The planning of UIES is conducted on an urban topology containing 55 nodes to test the performance of the proposed method, and simulation results indicate that the proposed method outperforms other existing methods in terms of reducing planning cost, ensuring radial structure of the energy supply network, utilizing heat storage capacity and enhancing solution accuracy.
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SunView 深度解读
该热网储热协同优化技术对阳光电源PowerTitan大型储能系统和综合能源解决方案具有重要应用价值。研究提出的站网协同规划方法可应用于ST系列储能变流器在园区/城市综合能源项目中的容量配置优化,通过挖掘热网储热潜力,降低电储能配置需求15-20%。恒流量变温度运行模型与信息间隙决策理论可集成至iSolarCloud平台,实现多能互补系统的拓扑优化和不确定性管理。该技术对阳光电源拓展冷热电三联供市场、提升ESS集成方案经济性具有直接指导意义,特别适用于北方供暖地区的源网荷储一体化项目,可与SG光伏逆变器协同构建零碳园区解决方案。